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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >The mass transfer coefficient assessment and productivity enhancement of a vertical tubular solar brackish water still
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The mass transfer coefficient assessment and productivity enhancement of a vertical tubular solar brackish water still

机译:静止管状太阳能咸水的传质系数评估和生产率增强

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This paper presents an experimental investigation of a single-effect vertical tubular solar brackish water desalination device, with an aim to determine the mass transfer coefficient and its enhancement. The device consists of two closely spaced concentric pipes. The outside of the inner pipe is covered with a wicking material and wetted with hot brackish water. The water vapor evaporated from the wicking material condenses on the inside of the outer pipe. The measured productivity and temperatures at various points are given for different wicking materials thickness, water flow rates and chamber pressure under the condition of given heating power. Mass transfer coefficients are calculated from the experimental results and then applied in the prediction of water productivity. The maximum discrepancy between the calculation yield and measurement yield is relatively small compared with previous study. In addition, it was found that the yield of the solar still is 23.9% higher when the chamber pressure is lower by 25 kPa due to the enhanced mass transfer. Similar, doubling the ambient air velocity can increase the water yield by about 17.0%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文提出了一种单效垂直管状太阳能熔化水脱盐装置的实验研究,目的是确定传质系数及其增强。该装置由两个紧密间隔的同心管组成。内管的外部覆盖着芯吸材料,并用热咸水润湿。从芯吸材料蒸发的水蒸气在外管的内部凝结。在给定加热功率的情况下,给出了不同点的测量的生产率和温度,用于不同的芯吸材料厚度,水流速率和室压。传质系数由实验结果计算,然后应用于水生产率的预测。与先前的研究相比,计算产量和测量产量之间的最大差异相对较小。此外,发现由于增强的传质由于腔室压力降低25kPa,太阳的产量仍然高出23.9%。类似,将环境空气速度加倍,可以将水产量提高约17.0%。 (c)2017 Elsevier Ltd.保留所有权利。

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